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Field testing and numerical modeling of a low-fill box culvert under a flexible pavement subjected to traffic loading

机译:荷载作用下柔性路面下低填方箱涵的现场测试与数值模拟

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摘要

This paper presents field study and numerical modeling results for a single-cell low-fill concrete box culvert under a flexible pavement subjected to traffic loading. The culvert in the field test was instrumented with displacement transducers to capture the deformations resulting from different combinations of static and traffic loads. A low-boy truck with a known axle configuration and loads was used to apply seven static load combinations and traffic loads at different speeds. Deflections under the culvert roof were measured during loading. Soil and pavement samples were obtained by drilling operation on the test site. The properties of the soil and pavement layers were determined in the laboratory. A 3-D numerical model of the culvert was developed using a finite difference program FLAC3D. Linear elastic models were used for the pavement layers and soil. The numerical results with the material properties determined in the laboratory were compared with the field test results. The observed deflections in the field test were generally smaller under moving loads than static loads. The maximum deflections measured during the static and traffic loads were 0.6 mm and 0.41 mm respectively. The deflections computed by the numerical method were in good agreement with those observed in the field test. The deflection profiles obtained from the field test and the numerical simulation suggest that the traffic load acted more like a concentrated load distributed over a limited area on the culvert. Elastic models for culverts, pavement layers, and surrounding soil are appropriate for numerical modeling of box culverts under loading for load rating purposes.
机译:本文介绍了在交通荷载作用下的柔性路面下单单元低填充混凝土箱涵的现场研究和数值模拟结果。现场测试中的涵洞装有位移传感器,以捕获由静载荷和交通载荷的不同组合引起的变形。使用具有已知车轴配置和载荷的低矮卡车,以不同的速度施加七个静态载荷组合和交通载荷。在加载过程中测量了涵洞屋顶下的挠度。通过在测试现场进行钻孔操作获得土壤和路面样品。在实验室中确定了土壤和路面层的性质。使用有限差分程序FLAC3D开发了涵洞的3-D数值模型。线性弹性模型用于路面层和土壤。将在实验室中确定的具有材料特性的数值结果与现场测试结果进行比较。现场测试中观察到的挠度通常在移动载荷下要小于静态载荷。在静载荷和交通载荷下测得的最大挠度分别为0.6 mm和0.41 mm。用数值方法计算出的挠度与现场试验中观察到的相吻合。从现场测试和数值模拟获得的挠度曲线表明,交通荷载的作用更像集中荷载分布在涵洞的有限区域上。涵洞,路面层和周围土壤的弹性模型适用于荷载作用下箱形涵洞的数值建模,以达到额定载荷的目的。

著录项

  • 来源
    《Geomechanics and engineering》 |2016年第5期|625-638|共14页
  • 作者单位

    Engn & Testing Serv Inc, 5226 Indian River Rd, Virginia Beach, VA 23464 USA;

    Univ Kansas, Dept Civil Environm & Architectural Engn, 1530 West 15th St, Lawrence, KS 66045 USA;

    Univ Kansas, Dept Civil Environm & Architectural Engn, 1530 West 15th St, Lawrence, KS 66045 USA;

    Kansas Dept Transportat, 2300 Van Buren, Topeka, KS 66611 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    culvert; deflection; numerical method; pavement; stress;

    机译:涵洞;挠度;数值方法;路面;应力;
  • 入库时间 2022-08-18 03:42:25

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